The Role of Metals in the Reaction Catalyzed by Metal-Ion-Independent Bacillary RNase

Author:

Sokurenko Yulia1ORCID,Ulyanova Vera1,Zelenikhin Pavel1,Kolpakov Alexey1,Blokhin Dmitriy2,Müller Dieter3,Klochkov Vladimir2,Ilinskaya Olga1

Affiliation:

1. Institute of Fundamental Medicine and Biology, Kazan Federal University, Kremlevskaya Str. 18, Kazan 420008, Russia

2. Institute of Physics, Kazan Federal University, Kremlevskaya Str. 16a, Kazan 420008, Russia

3. Institute for Anatomy and Cell Biology, Justus Liebig University Giessen, Aulweg 123, 35385 Giessen, Germany

Abstract

Extracellular enzymes of intestinal microbiota are the key agents that affect functional activity of the body as they directly interact with epithelial and immune cells. Several species of theBacillusgenus, likeBacillus pumilus, a common producer of extracellular RNase binase, can populate the intestinal microbiome as a colonizing organism. Without involving metal ions as cofactors, binase depolymerizes RNA by cleaving the 3′,5′-phosphodiester bond and generates 2′,3′-cyclic guanosine phosphates in the first stage of a catalytic reaction. Maintained in the reaction mixture for more than one hour, such messengers can affect the human intestinal microflora and the human body. In the present study, we found that the rate of 2′,3′-cGMP was growing in the presence of transition metals that stabilized the RNA structure. At the same time, transition metal ions only marginally reduced the amount of 2′,3′-cGMP, blocking binase recognition sites of guanine at N7 of nucleophilic purine bases.

Funder

Russian Research Foundation

Publisher

Hindawi Limited

Subject

Inorganic Chemistry,Organic Chemistry,Biochemistry

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